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A Mechanism of Corrosion-Induced Roughening of Glass Surfaces

机译:腐蚀引起的玻璃表面粗糙化的机理

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摘要

Atomic force microscopy (AFM), X-ray photoelectron spectroscopy (XPS), and solution analysis by inductively coupled plasma mass spectrometry (ICP-MS) were used to investigate the molecular scale processes responsible for the roughening of glass surfaces due to aqueous corrosion. The study of atomically smooth fiber and melt surfaces allowed direct investigation of the atomic and molecular scale effects of dissolution on surface roughness. The combined use of these analytical techniques clearly showed that the change in RMS roughness with aqueous corrosion could be directly related to the concentration of silica released to solution from the glass; cation leaching alone did not generate detectable roughening. It is well known that nano-/microscale surface roughness can influence strength, optical response, adsorptivity, and other surface properties of glass. It is shown here that the roughening of silicate glass surfaces can be expected based on the amount of silica released from the glass and does not show a dependence on the extent of modifier ion leaching. It is also suggested that the glass composition dependence of this roughening may be a measure of the nanoscale heterogeneity of the glass network structure.
机译:原子力显微镜(AFM),X射线光电子能谱(XPS)和电感耦合等离子体质谱法(ICP-MS)进行溶液分析被用来研究分子尺度过程,该过程导致了由于水腐蚀而使玻璃表面变粗糙。对原子光滑纤维和熔体表面的研究可以直接研究溶解对表面粗糙度的原子和分子尺度影响。这些分析技术的结合使用清楚地表明,水腐蚀引起的RMS粗糙度的变化可能与从玻璃中释放到溶液中的二氧化硅的浓度直接相关。单独的阳离子浸提不会产生可检测到的粗糙感。众所周知,纳米/微米级的表面粗糙度会影响玻璃的强度,光学响应,吸附性和其他表面性质。此处显示出,基于从玻璃中释放的二氧化硅的量,可以预期硅酸盐玻璃表面的粗糙化,并且不显示出对改性剂离子浸出程度的依赖性。还建议这种粗糙化的玻璃成分依赖性可以是玻璃网络结构的纳米级异质性的量度。

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    Kazuo Inamori School of Engineering, Alfred University, Alfred, New York 14802;

    The Department of Materials Science and Engineering, Materials Research Institute, The Pennsylvania State University, University Park, Pennsylvania 16803;

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